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africa|efficiency|energy|power|projects|security|solar|system|systems|technology|wireless

UK announces funding for the development of space-based solar power technologies

An artist’s impression of a space-based solar power array

An artist’s impression of a space-based solar power array

Photo by ESA

13th June 2023

By: Rebecca Campbell

Creamer Media Senior Deputy Editor

     

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The UK government has announced that it awarding funding of £4.3-million (about R100.66-million) to seven British universities and technology companies to develop technologies necessary to create a space-based solar power (SBSP) sector, to provide the country with green energy. Of the funding, £3.3-million (some R77.25-million) will be provided by the Department of Energy Security and Net Zero, while the rest will come from the UK Space Agency.

SBSP will see large solar arrays deployed in space, generating electricity, which will then be transmitted down to Earth, using wireless (microwave) technology, in a safe manner, and introduced into terrestrial transmission grids. Space-based solar arrays will be in sunlight for 99% of the time.

The UK is one of a handful of countries seeking to develop this technology, which has enormous potential to provide clean energy. The other countries working in the field include Japan and the US, and earlier this month scientists at the California Institute of Technology, in the US, reported that they had successfully transmitted solar power from space to the Earth, the first time that this has ever been achieved.

“Space technology and solar energy have a long history – the need to power satellites was a key driver in increasing the efficiency of solar panels which generate electricity for homes and businesses today,” highlighted UK Space Agency payload systems lead Dr Mamatha Maheshwarappa. “There is significant potential for the space and energy sectors to work together to support the development of [SBSP], and the UK Space Agency has contributed £1-million [some R23.41-million] to these innovative projects to help take this revolutionary concept to the next level.”

Cambridge University will get more than £770 000 (over R18-million) to develop solar panels that will be ultralightweight yet able to survive a long time in high-radiation space environments. Queen Mary University, in London, is to receive more than £960 000 (over R22.47-million) to develop a long-range, high-efficiency, wireless transmission system. MicroLink Devices UK will be given more than £449 000 (over R10.5-million) to develop a new generation of flexible and lightweight solar panels. The University of Bristol will get more than £353 000 (over R8.26-million) to create a solar space wireless power transfer capability simulation. 

The Satellite Applications Catapult (a private company) has been assigned the greatest amount of the funding, but for two separate projects under the SBSP programme. It will receive more than £999 000 (over R23.38-million) to develop an experiment to test its space satellite antenna technology’s electronical beam steering and quality. And it will also get £424 000 (R9.92-million) for a study about how commercial SBSP can be advanced in the UK.

Imperial College London will get over £295 000 (more than R6.9-million) to assess the core benefits and effects of SBSP, including how it could be integrated into the UK national grid alongside other green energy sources. And the EDF Energy R&D UK Centre will be awarded more than £25 000 (over R585 000) to study how to improve awareness of the value of SBSP as an energy source for the UK.

“I want the UK to boldly go where no country has gone before – boosting our energy security by getting our power directly from space,” affirmed UK Energy Security and Net Zero Secretary (equivalent to Cabinet Minister in South Africa) Grant Shapps. “We’re taking a giant leap by backing the development of this exciting technology and putting the UK at the forefront of this rapidly emerging industry as it prepares for launch.”     

Edited by Creamer Media Reporter

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